首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Through-Space Paramagnetic NMR Effects in Host-Guest Complexes: Potential Ruthenium(III) Metallodrugs with Macrocyclic Carriers
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Through-Space Paramagnetic NMR Effects in Host-Guest Complexes: Potential Ruthenium(III) Metallodrugs with Macrocyclic Carriers

机译:宿主 - 客户复合物中的空间副血管核磁共振作用:巨大钌(III)Metallodrugs,宏循环载体

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摘要

The potential of paramagnetic ruthenium(III) compounds for use as anticancer metallodrugs has been investigated extensively during the past several decades. However, the means by which these ruthenium compounds are transported and distributed in living bodies remain relatively unexplored. In this work, we prepared several novel ruthenium(III) compounds with the general structure Na+[trans-(RuCI4)-C-III(DMSO)(L)](-)undefined (DMSO = dimethyl sulfoxide), where L stands for pyridine or imidazole linked with adamantane, a hydrophobic chemophore. The supramolecular interactions of these compounds with macrocyclic carriers of the cyclodextrin (CD) and cucurbit[n]uril (CB) families were investigated by NMR spectroscopy, X-ray diffraction analysis, isothermal titration calorimetry, and relativistic DFT methods. The long-range hyperfine NMR effects of the paramagnetic guest on the host macrocycle are related to the distance between them and their relative orientation in the host-guest complex. The CD and CB macrocyclic carriers being studied in this account can be attached to a vector that attracts the drug-carrier system to a specific biological target and our investigation thus introduces a new possibility in the field of targeted delivery of anticancer metallodrugs based on ruthenium(III) compounds.
机译:在过去几十年中,已经在过去几十年中广泛研究了作为抗癌金属化合物的顺磁钌(III)化合物的潜力。然而,这些钌化合物在活体中运输和分布的方法仍然是相对未探索的。在这项工作中,我们制备了几种新的钌(III)化合物,其中一般结构Na + [反式(Ruci4)-C-III(DMSO)(L)]( - )未定义(DMSO =二甲基磺氧化亚砜),其中L代理吡啶或咪唑与疏水性化学核糖有关。通过NMR光谱,X射线衍射分析,等温滴定热量和相对论DFT方法研究了这些化合物与环糊精(CD)和葫芦(CD)和葫芦(CB)家族的大环载体的超分子相互作用。寄主宏观上的顺磁性宾客的远程高浓度NMR效应与它们之间的距离及其在宿主复合物中的距离有关。在该账户中研究的CD和Cb宏环携带者可以附着在吸引药物 - 载体系统以对特定的生物目标的载体上,因此我们的研究引起了基于钌的抗癌金属解压缩领域的新可能性( III)化合物。

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